Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

R-spondins can potentiate WNT signaling without LGRs

View through CrossRef
The WNT signaling pathway regulates patterning and morphogenesis during development and promotes tissue renewal and regeneration in adults. The R-spondin (RSPO) family of four secreted proteins, RSPO1-4, amplifies target cell sensitivity to WNT ligands by increasing WNT receptor levels. Leucine-rich repeat-containing G-protein coupled receptors (LGRs) 4-6 are considered obligate high-affinity receptors for RSPOs. We discovered that RSPO2 and RSPO3, but not RSPO1 or RSPO4, can potentiate WNT/β-catenin signaling in the absence of all three LGRs. By mapping the domains on RSPO3 that are necessary and sufficient for this activity, we show that the requirement for LGRs is dictated by the interaction between RSPOs and the ZNRF3/RNF43 E3 ubiquitin ligases and that LGR-independent signaling depends on heparan sulfate proteoglycans (HSPGs). We propose that RSPOs can potentiate WNT signals through distinct mechanisms that differ in their use of either LGRs or HSPGs, with implications for understanding their biological functions.
eLife Sciences Publications, Ltd
Title: R-spondins can potentiate WNT signaling without LGRs
Description:
The WNT signaling pathway regulates patterning and morphogenesis during development and promotes tissue renewal and regeneration in adults.
The R-spondin (RSPO) family of four secreted proteins, RSPO1-4, amplifies target cell sensitivity to WNT ligands by increasing WNT receptor levels.
Leucine-rich repeat-containing G-protein coupled receptors (LGRs) 4-6 are considered obligate high-affinity receptors for RSPOs.
We discovered that RSPO2 and RSPO3, but not RSPO1 or RSPO4, can potentiate WNT/β-catenin signaling in the absence of all three LGRs.
By mapping the domains on RSPO3 that are necessary and sufficient for this activity, we show that the requirement for LGRs is dictated by the interaction between RSPOs and the ZNRF3/RNF43 E3 ubiquitin ligases and that LGR-independent signaling depends on heparan sulfate proteoglycans (HSPGs).
We propose that RSPOs can potentiate WNT signals through distinct mechanisms that differ in their use of either LGRs or HSPGs, with implications for understanding their biological functions.

Related Results

R-spondins can potentiate WNT signaling without LGR receptors
R-spondins can potentiate WNT signaling without LGR receptors
The WNT signaling pathway regulates patterning and morphogenesis during embryonic development and promotes tissue renewal and regeneration in adults. Some WNT responses in vertebra...
WNT-mediated regulation of regeneration and oncogenesis
WNT-mediated regulation of regeneration and oncogenesis
WNT signaling is a key cell-cell communication pathway that regulates essential cellular processes such as cell fate determination and proliferation. Accordingly, WNT signaling pla...
WNT Receptor Requirements for Dishevelled Phosphorylation
WNT Receptor Requirements for Dishevelled Phosphorylation
The Dishevelled (DVL) protein is a key component of WNT signaling that relays signals from receptors to downstream effectors. It has been shown that following WNT ligand binding to...
Abstract 1584: Wnt/beta-catenin and Foxa2 axis activates AR signaling in castration resistant prostate cancer
Abstract 1584: Wnt/beta-catenin and Foxa2 axis activates AR signaling in castration resistant prostate cancer
Abstract Background: Prostate cancer (PCa) is the leading cancer among men in the world. Androgen deprivation therapy is a common treatment to cease prostate growth....
WNT Signaling Pathway and Stem Cell Signaling Network
WNT Signaling Pathway and Stem Cell Signaling Network
Abstract WNT signals are transduced to the canonical pathway for cell fate determination, and to the noncanonical pathway for control of cell movement and tissue pol...
PTK7 localization and protein stability is affected by canonical Wnt ligands
PTK7 localization and protein stability is affected by canonical Wnt ligands
ABSTRACT Protein tyrosine kinase 7 (PTK7) is an evolutionarily conserved transmembrane receptor with important roles in embryonic development and disease. Originally...

Back to Top